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Toward a Resilient Network by Optimal Sizing of Large Scale PV Power Plant in Microgrid-Case Study of Mongolia

机译:蒙古国微电网研究中大型光伏电站规模的优化建立弹性网络

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Competitive price and eco-friendly operation features make solar photovoltaic (PV) plant a strong candidate for a modern power system's generation mix. Therefore, it has been economically feasible to build PV based microgrids, which can convert current centralized national grids into decentralized segments so that resiliency of grid will improve and line loss will decrease. In this study, we examined integration scenarios of different size of PV plants into Altai Uliastai Energy System (AUES) of Mongolia in order to evaluate the possibility of developing microgrid using current hydropower plant (HPP) and proposed PV plant. Results showed that a PV plant with 10 MW capacity would perform well with HPP and load from energy management point of view. DIGSilent Power Factory has been used for quasi-dynamic simulation.
机译:具有竞争力的价格和环保操作特性使太阳能光伏(PV)电厂成为现代电力系统发电组合的强大候选者。因此,建立基于光伏的微电网在经济上是可行的,它可以将当前的集中式国家电网转换为分散的网段,从而提高电网的弹性并减少线损。在这项研究中,我们研究了将不同规模的光伏电站并入蒙古的阿尔泰·乌利亚斯泰能源系统(AUES)的方案,以评估使用现有水力发电厂(HPP)和拟建的光伏电站开发微电网的可能性。结果表明,从能源管理的角度来看,容量为10兆瓦的光伏电站在HPP和负载方面表现良好。 DIGSilent Power Factory已用于准动态仿真。

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